GENERATIVE BUILDING SYSTEM
Global Facade Project turns a plain-language brief into the building envelope itself — geometry, mullions, transoms, glass, setbacks, drainage and wind — and keeps the whole system connected as you change it.
WHY IT IS DIFFERENT
The output is a construction system: geometry, facade parts and engineering remain connected inside one live building state. Change the building and the system recalculates.
01 · BUILDING
Floor count, functions, heights, footprint, podiums, setbacks and floor groups become one editable building state.
02 · FACADE SYSTEM
Mullions, transoms, glass, spandrels, vision zones, corners and drainage resolve as measurable construction elements.
03 · ENGINEERING
Wind codes and calculation methods resolve pressure, deflection and profile inertia, then feed directly back into mullion and glass selection.
TECHNOLOGY
Move a setback. Turn a straight tower into a podium. Give each floor group a different mullion rhythm. GFP keeps one building state and recalculates the affected facade, quantities and engineering from it.
“Recess floor 3 by another metre and change the residential mullion rhythm.”
TODAY · WORKING NOW
Generate. Change. Engineer.
A prompt becomes a live stick curtain wall with drawings, visualization, quantities and wind engineering — and the model stays editable.
TODAY · COMMERCIAL FLOW
Price. Tender. Procure.
Pricing, tender material and procurement workflows run from the same construction state. No second model. No redraw from scratch.
FOR ALUMINIUM CONTRACTORS
Get the geometry, visualization, glass and aluminium quantities, wind checks and revisions moving before the usual 5–6-person development chain has finished its first option.
LIVE PUBLIC DEMO
A limited live window into the real engine. Build an aluminium structural-silicone stick curtain wall, then change it in plain language.
START WITH A BUILDING
OR CHANGE THE SYSTEM
Your building will appear here. A first build can take up to two minutes; while it resolves, the status line shows the construction work in progress.
TECHNOLOGY
General AI can discuss a facade. GFP has to produce one that is useful. It translates a building brief into construction operations, resolves the curtain wall, and keeps the result measurable as the design changes.
Default and custom floor heights, slabs, ceiling voids, raised floors, podium/tower relationships and recessed floors.
Measurable mullions, transoms and glass panels; spandrel and vision zones; external and internal corners; drainage at junctions.
Every glass panel can be identified, measured, counted and grouped. The engine can rationalise panel sizes and calculate glass, aluminium and silicone quantities.
Wind is resolved across all facades and can drive pressure, field loads, glass checks, deflection and profile-property logic.
Because construction intelligence has to be deep before it is broad. The public engine is deliberately limited to aluminium stick curtain walls. It is not pretending to design every facade type. The same architecture can expand into contractor and manufacturer systems as their catalogues and rules are encoded.
A live engine that can build and change a stick curtain wall from a prompt; resolve floors, grids, glass, corners, setbacks and drainage; calculate quantities and wind; and produce elevations, plans, sections and visualizations from the same building state.
CONTACT
For live product demos, aluminium-contractor adoption, development-side prototyping and investment conversations.
See a building generated, changed and recalculated against a real facade brief.
GFP compresses the chain between a tender brief and a technically meaningful facade option: geometry, presentation material, quantities, engineering and revisions stay in one model. The commercial direction is contractor-specific catalogues, profile selection and costing.
Use a rough building brief early. Test facade geometry and variations before a conventional development cycle has consumed weeks, then carry the same model toward quantities and price.
Facade is the first vertical. The product direction is AI for the physical world: systems that can turn intent into engineered physical assemblies, then connect those assemblies to pricing, suppliers, bids and delivery.